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NUMERICAL SIMULATION OF DNAPL CONTAMINANT TRANSPORT AND REMEDIATION IN A THREE-DIMENSIONAL HETEROGENEOUS SUBSURFACE

机译:三维异质表面中DNAPL污染物迁移与修复的数值模拟

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Surfactant-enhanced aquifer remediation (SEAR) is a promising remediation technology for cleaning up DNAPL contamination in groundwater systems. However, simulation of SEAR measures involves complex multiphase systems and the related mathematical models are still under active research and development. In this study, a numerical model for simulating surfactant-enhanced groundwater remediation processes is introduced. The model is three-dimensional and permits heterogeneous distributions of properties to appropriately assess the conditions present at the field scale. The model is applied to a hypothetical PCE-contaminated site for simulating the surfactant-flushing process, and demonstrating the role of numerical modeling approaches in SEAR design, the accomplishment of modeling process, the required information, and the expected remediation efficiency.
机译:表面活性剂增强的含水层修复(SEAR)是一种有前途的修复技术,用于清除地下水系统中的DNAPL污染。但是,SEAR措施的仿真涉及复杂的多相系统,相关的数学模型仍在积极研究和开发中。在这项研究中,建立了一个模拟表面活性剂增强地下水修复过程的数值模型。该模型是三维模型,允许属性的异质分布来适当评估现场规模的条件。该模型被应用于假设的PCE污染场地,以模拟表面活性剂冲洗过程,并证明数值建模方法在SEAR设计中的作用,建模过程的完成,所需的信息以及预期的修复效率。

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